Title :
Ultrawideband and High-Efficiency Linear Polarization Converter Based on Double V-Shaped Metasurface
Author :
Xi Gao ; Xu Han ; Wei-Ping Cao ; Hai Ou Li ; Hui Feng Ma ; Tie Jun Cui
Author_Institution :
Sch. of Inf. & Commun., Guilin Univ. of Electron. Technol., Guilin, China
Abstract :
In this paper, a double V-shaped metasurface that can efficiently convert linear polarizations of electromagnetic (EM) waves in wideband is proposed. Based on the electric and magnetic resonant features of a single V-shaped particle, four EM resonances are generated in a V-shaped pair, leading to significant bandwidth expansion of cross-polarized reflections. The simulation results show that the proposed metasurface is able to convert linearly polarized waves into cross-polarized waves in ultrawideband from 12.4 to 27.96 GHz, with an average polarization conversion ratio (PCR) of 90%. The experimental results are in good agreement with the numerical simulations. Compared to published designs, the proposed polarization converter has a simple geometry but an ultrawideband and hence can be used in many applications, such as reflector antennas, imaging systems, remote sensors, and radiometers. The method can also be extended to the terahertz band.
Keywords :
electromagnetic wave polarisation; electromagnetic wave reflection; microwave metamaterials; EM resonance generation; V-shaped pair; bandwidth expansion; cross-polarized reflections; double V-shaped metasurface; electric resonant features; frequency 12.4 GHz to 27.96 GHz; high-efficiency linear polarization converter; imaging systems; linear electromagnetic wave polarization conversion; magnetic resonant features; radiometers; reflector antennas; remote sensors; single V-shaped particle; ultrawideband linear polarization converter; Bandwidth; Dielectrics; Polarization; Reflection; Reflection coefficient; Resonant frequency; Ultra wideband technology; High efficiency; Linear polarization converter; high efficiency; linear polarization converter; metasurface; ultra-wideband; ultrawideband;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2434392